散射
吸收(声学)
路径长度
光学
蒙特卡罗方法
光散射
计算物理学
物理
厚板
平均自由程
光路
材料科学
数学
统计
地球物理学
作者
Rajeshkumar Mupparapu,Kévin Vynck,Tomas Svensson,Matteo Burresi,Diederik S. Wiersma
出处
期刊:Optics Express
[The Optical Society]
日期:2015-10-08
卷期号:23 (24): A1472-A1472
被引量:33
摘要
We theoretically and numerically investigate the capability of disordered media to enhance the optical path length in dielectric slabs and augment their light absorption efficiency due to scattering. We first perform a series of Monte Carlo simulations of random walks to determine the path length distribution in weakly to strongly (single to multiple) scattering, non-absorbing dielectric slabs under normally incident light and derive analytical expressions for the path length enhancement in these two limits. Quite interestingly, while multiple scattering is expected to produce long optical paths, we find that media containing a vanishingly small amount of scatterers can still provide high path length enhancements due to the very long trajectories sustained by total internal reflection at the slab interfaces. The path length distributions are then used to calculate the light absorption efficiency of media with varying absorption coefficients. We find that maximum absorption enhancement is obtained at an optimal scattering strength, in-between the single-scattering and the diffusive (strong multiple-scattering) regimes. This study can guide experimentalists towards more efficient and potentially low-cost solutions in photovoltaic technologies.
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